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Analytical Nonlinear Reluctance Model of a Single-Phase Saturated Core Fault Current Limiter

机译:单相饱和铁心故障限流器的非线性分析磁阻模型

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摘要

A saturated core fault current limiter (FCL) is a device that is designed to limit the fault currents in electrical energy networks and consequently, protect existing network equipment from damage. Due to complex nonlinear magnetic properties, the performance of saturated core FCLs has largely been characterized through experimentation and finite-element analysis simulations. Although both of these techniques are quite accurate, they are time consuming and do not describe the behavior of FCLs in actual electrical networks. This has led to an increasing demand for an accurate analytical model that is suitable for transient network analyses. This paper presents the development of an analytical model of a single-phase open-core FCL, which accurately describes the nonlinear magnetic properties of the FCL through a reduced reluctance approach. The extension of this model to other saturated core FCL arrangements (such as closed core) is also discussed.
机译:饱和核心故障电流限制器(FCL)是一种旨在限制电能网络中的故障电流并因此保护现有网络设备免受损坏的设备。由于复杂的非线性磁特性,饱和磁芯FCL的性能在很大程度上已通过实验和有限元分析模拟进行了表征。尽管这两种技术都非常准确,但是它们很耗时,并且没有描述实际电气网络中FCL的行为。这导致对适用于瞬态网络分析的精确分析模型的需求不断增长。本文介绍了单相开芯FCL分析模型的开发,该模型通过减少的磁阻方法准确地描述了FCL的非线性磁性能。还讨论了将该模型扩展到其他饱和磁芯FCL布置(例如封闭磁芯)的方法。

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